Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors

Halogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.

Bibliographic Details
Main Authors: Katarina Lisac, Filip Topić, Mihails Arhangelskis, Sara Cepić, Patrick A. Julien, Christopher W. Nickels, Andrew J. Morris, Tomislav Friščić, Dominik Cinčić
Format: Article
Language:English
Published: Nature Portfolio 2019-01-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-07957-6
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author Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
author_facet Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
author_sort Katarina Lisac
collection DOAJ
description Halogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.
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spelling doaj.art-15593c58585d4c8bb61290a07ccdc11a2022-12-21T19:33:14ZengNature PortfolioNature Communications2041-17232019-01-0110111010.1038/s41467-018-07957-6Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptorsKatarina Lisac0Filip Topić1Mihails Arhangelskis2Sara Cepić3Patrick A. Julien4Christopher W. Nickels5Andrew J. Morris6Tomislav Friščić7Dominik Cinčić8Faculty of Science, Department of Chemistry, University of ZagrebDepartment of Chemistry, McGill UniversityDepartment of Chemistry, McGill UniversityFaculty of Science, Department of Chemistry, University of ZagrebDepartment of Chemistry, McGill UniversityDepartment of Chemistry, McGill UniversitySchool of Metallurgy and Materials, University of Birmingham, EdgbastonDepartment of Chemistry, McGill UniversityFaculty of Science, Department of Chemistry, University of ZagrebHalogen bonding can be exploited for the design of functional supramolecular materials, but heavier elements that are known to accept a halogen bond remain limited. Here, the authors demonstrate the formation of two-component cocrystals based on halogen bonds with phosphorus, arsenic and antimony.https://doi.org/10.1038/s41467-018-07957-6
spellingShingle Katarina Lisac
Filip Topić
Mihails Arhangelskis
Sara Cepić
Patrick A. Julien
Christopher W. Nickels
Andrew J. Morris
Tomislav Friščić
Dominik Cinčić
Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
Nature Communications
title Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_full Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_fullStr Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_full_unstemmed Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_short Halogen-bonded cocrystallization with phosphorus, arsenic and antimony acceptors
title_sort halogen bonded cocrystallization with phosphorus arsenic and antimony acceptors
url https://doi.org/10.1038/s41467-018-07957-6
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